Converts between types with different cv-qualification.
const_cast < new_type > ( expression ) |
Returns a value of type new_type
.
Only the following conversions can be done with const_cast
. In particular, only const_cast
may be used to cast away (remove) constness or volatility.
T
may be converted to a lvalue or rvalue reference to the same type T
, more or less cv-qualified. Likewise, an rvalue may be converted to a more or less cv-qualified rvalue reference. The result of a reference const_cast
refers to the original object if expression is a glvalue and to the materialized temporary otherwise (since C++17).As with all cast expressions, the result is:
Pointers to functions and pointers to member functions are not subject to const_cast
.
const_cast
makes it possible to form a reference or pointer to non-const type that is actually referring to a const object or a reference or pointer to non-volatile type that is actually referring to a volatile object. Modifying a const object through a non-const access path and referring to a volatile object through a non-volatile glvalue results in undefined behavior.
#include <iostream> struct type { int i; type(): i(3) {} void f(int v) const { // this->i = v; // compile error: this is a pointer to const const_cast<type*>(this)->i = v; // OK as long as the type object isn't const } }; int main() { int i = 3; // i is not declared const const int& rci = i; const_cast<int&>(rci) = 4; // OK: modifies i std::cout << "i = " << i << '\n'; type t; // if this was const type t, then t.f(4) would be undefined behavior t.f(4); std::cout << "type::i = " << t.i << '\n'; const int j = 3; // j is declared const int* pj = const_cast<int*>(&j); // *pj = 4; // undefined behavior void (type::* pmf)(int) const = &type::f; // pointer to member function // const_cast<void(type::*)(int)>(pmf); // compile error: const_cast does // not work on function pointers }
Output:
i = 4 type::i = 4
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